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Hast, Michael; Howe, Christine – Journal of Science Education and Technology, 2013
Previous research indicates children reason in different ways about horizontal motion and motion in fall. At the same time, their understanding of motion down inclines appears to result from an interaction between horizontal and vertical motion understanding. However, this interaction is still poorly understood. Understanding of speed change may…
Descriptors: Scientific Concepts, Science Education, Elementary School Science, Age Differences
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Ebersbach, Mirjam; Van Dooren, Wim; Verschaffel, Lieven – International Journal of Science and Mathematics Education, 2011
The present study aimed at investigating children's and adolescents' understanding of constant and accelerated motions. The main objectives were (1) to investigate whether different task formats would affect the performance and (2) to track developmental changes in this domain. Five to 16 year olds (N = 157) predicted the distances of a moving…
Descriptors: Word Problems (Mathematics), Science Instruction, Task Analysis, Motion
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Kwon, Yong-Ju; Jeong, Jin-Su; Park, Yun-Bok – Science & Education, 2006
The purpose of the present study was to test the hypothesis that student's abductive reasoning skills play an important role in the generation of hypotheses on pendulum motion tasks. To test the hypothesis, a hypothesis-generating test on pendulum motion, and a prior-belief test about pendulum motion were developed and administered to a sample of…
Descriptors: Laboratory Equipment, Motion, Grade 5, Thinking Skills
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Manabu, Sumida – Science & Education, 2004
This paper describes life-span development of understanding about pendulum motion and effects of school science. The subjects were 2,766 people ranging from kindergartners up to 88 years senior citizens. The conflict and consensus between children and their parent's understanding of pendulum motion were also analyzed. The kindergartner's…
Descriptors: Physics, Motion, Scientific Principles, Science Instruction